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弹状病毒的快速反向遗传学系统:从正向到反向再回归

Rapid Reverse Genetics Systems for Rhabdoviruses: From Forward to Reverse and Back Again.

作者信息

Nolden Tobias, Finke Stefan

机构信息

Institute of Molecular Virology and Cell Biology, Friedrich-Loeffler-Institut, Südufer 10, 17493, Greifswald, Insel Riems, Germany.

ViraTherapeutics, Exlgasse2a, 6020, Innsbruck, Austria.

出版信息

Methods Mol Biol. 2017;1602:171-184. doi: 10.1007/978-1-4939-6964-7_12.

Abstract

Methods to recover recombinant negative strand RNA viruses (rNSVs) from cloned cDNAs have been significantly improved in more than two decades of NSV reverse genetics . In particular, for non-segmented negative strand RNA viruses (NNSVs ) like rhabdoviruses , time-consuming generation of reverse genetics systems by stitching PCR subfragments of genomic rhabdovirus cDNAs using ligase-based conventional cloning approaches limited the number of available recombinant virus cDNA clones. As genetic variability is considered an intrinsic feature of RNA viruses, it is thus reasonable to conclude that reverse genetics approaches to investigate natural virus functions and pathogenesis require improved systems that reflect the complexity of naturally occurring wild-type viruses, and that largely exclude adaption to cell culture conditions.In order to allow rapid cloning of wild-type NSV genome populations into reverse genetics vector plasmids, we developed a system in which cDNA copies of complete rhabdovirus populations are inserted into a plasmid bank by linear-to-linear homologous RecE/T recombination (LLHR ). Limited requirements for sequence information a priori, high cloning efficiencies, and the possibility to directly generate recombinant viruses from individual cDNA clones now offer novel opportunities to combine forward genetic dissection of natural rhabdovirus populations and downstream reverse genetics approaches.

摘要

在负链RNA病毒(NSV)反向遗传学的二十多年里,从克隆的cDNA中恢复重组负链RNA病毒(rNSV)的方法有了显著改进。特别是对于像弹状病毒这样的非节段性负链RNA病毒(NNSV),使用基于连接酶的传统克隆方法拼接基因组弹状病毒cDNA的PCR亚片段来耗时地构建反向遗传学系统,限制了可用重组病毒cDNA克隆的数量。由于遗传变异性被认为是RNA病毒的固有特征,因此可以合理地得出结论,用于研究天然病毒功能和发病机制的反向遗传学方法需要改进的系统,以反映天然野生型病毒的复杂性,并且在很大程度上排除对细胞培养条件的适应性。为了能够将野生型NSV基因组群体快速克隆到反向遗传学载体质粒中,我们开发了一种系统,其中完整弹状病毒群体的cDNA拷贝通过线性到线性同源RecE/T重组(LLHR)插入到质粒文库中。对先验序列信息的有限需求、高克隆效率以及直接从单个cDNA克隆产生重组病毒的可能性,现在为结合天然弹状病毒群体的正向遗传剖析和下游反向遗传学方法提供了新的机会。

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